Sarvalkar Prashant D, Jagtap Anuj S, Prasad Neeraj R, Yaul Amit R, Sharma Kiran Kumar K, Ramteke Avinash A
School of Nanoscience and Technology, Shivaji University, Kolhapur, MH, 416004, India.
Department of Chemistry, Narayanrao Kale Smruti Model College, Karanja (Gh.), Wardha, MH, 442203, India.
Sci Rep. 2025 Jan 25;15(1):3281. doi: 10.1038/s41598-025-87705-1.
Acoustical properties are essential for understanding the molecular interactions in fluids, as they influence the physicochemical behavior of liquids and determine their suitability for diverse applications. This study investigated the acoustical parameters of silver nanoparticles (Ag NPs), reduced graphene oxide (rGO), and Ag/rGO nanocomposite nanofluids at varying concentrations. Ag NPs and Ag/rGO nanocomposites were synthesized via a Bos taurus indicus (BTI) metabolic waste-assisted method and characterized using advanced techniques, including XRD, TEM, Raman, DLS, zeta potential, and XPS. The synthesized nanocomposites were evaluated for their acoustical, antioxidant, and plant growth-regulatory properties. Acoustical analysis revealed a linear relationship between the nanofluid concentration and density, with key parameters such as adiabatic compressibility, apparent molar compressibility, and apparent molar volume increase at lower concentrations. Irregular changes in ultrasonic velocity and other parameters at 0.025 mol/dm suggest unique nanoparticle-solvent interactions. The Ag/rGO nanocomposites exhibited superior antioxidative potential compared to Ag NPs, with DPPH scavenging activity reaching 65.69% and ABTS scavenging activity reaching 65.01% at 100 µg/mL. Plant growth studies have demonstrated enhanced germination rates (100% in spinach and 40% in fenugreek) and improved root and shoot elongation at 0.0025-0.005 mol/dm. This study bridges the gap in understanding the acoustical and multifunctional properties of nanocomposites for biomedical, agricultural, and environmental applications.
声学性质对于理解流体中的分子相互作用至关重要,因为它们会影响液体的物理化学行为,并决定其在各种应用中的适用性。本研究调查了不同浓度下银纳米颗粒(Ag NPs)、还原氧化石墨烯(rGO)和Ag/rGO纳米复合纳米流体的声学参数。通过印度瘤牛(BTI)代谢废物辅助法合成了Ag NPs和Ag/rGO纳米复合材料,并使用包括XRD、TEM、拉曼、DLS、zeta电位和XPS在内的先进技术对其进行了表征。对合成的纳米复合材料的声学、抗氧化和植物生长调节特性进行了评估。声学分析表明,纳米流体浓度与密度之间存在线性关系,在较低浓度下,绝热压缩性、表观摩尔压缩性和表观摩尔体积等关键参数会增加。在0.025 mol/dm时超声速度和其他参数的不规则变化表明存在独特的纳米颗粒 - 溶剂相互作用。与Ag NPs相比,Ag/rGO纳米复合材料表现出更高的抗氧化潜力,在100 μg/mL时DPPH清除活性达到65.69%,ABTS清除活性达到65.01%。植物生长研究表明,在0.0025 - 0.005 mol/dm时发芽率提高(菠菜中为100%,胡芦巴中为40%),根和芽的伸长得到改善。本研究填补了在理解纳米复合材料在生物医学、农业和环境应用中的声学和多功能特性方面的空白。